首页> 美国政府科技报告 >THEORETICAL STABILITY DERIVATIVES OF THIN SWEPTBACK WINGS TAPERED TO A POINT WITH SWEPTBACK OR SWEPTFORWARD TRAILING EDGES FOR A LIMITED RANGE OF SUPERSONIC SPEEDS
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THEORETICAL STABILITY DERIVATIVES OF THIN SWEPTBACK WINGS TAPERED TO A POINT WITH SWEPTBACK OR SWEPTFORWARD TRAILING EDGES FOR A LIMITED RANGE OF SUPERSONIC SPEEDS

机译:薄切换翼的理论稳定性导数,以切换或向前拖尾的角度为有限范围的超音速速度

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The stability derivatives valid for a limited range of supersonic speeds are presented for a series of sweptback wings tapered to a point with sweptback or sweepforward trailing edges. These wings were derived by modifying the trailing edge of a basic triangular wing so that it coincided with lines drawn from the wing tips to the wing axis of symmetry. The stability derivatives were formulated by using the pressure distributions previously obtained for the basic triangular wing for angle of attack, BideBlip, pitching, rolling, and yawing. Explicit expressions are given for the stability derivatives with respect to principal body axes and conversion formulas are provided for the transformation to stability axes. The results are limited to Mach numbers for which the wing is contained within the Mach cones springing from the vertex and from the trailing edge of the center section of the wing.

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